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首页> 外文期刊>International Journal of Thermal Sciences >Numerical study of heat transfer from a synthetic impinging jet with a detailed model of the actuator membrane
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Numerical study of heat transfer from a synthetic impinging jet with a detailed model of the actuator membrane

机译:用致动器膜的详细模型从合成撞击射流传热的数值研究

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Synthetic jets are produced by the oscillatory movement of a membrane inside a cavity, causing the fluid to enter and leave through a small orifice. The present study is focused on investigating the cooling capabilities of a synthetic jet enclosed between two parallel isothermal plates with an imposed temperature difference. The unsteady three-dimensional Navier-Stokes equations have been solved for a range of Reynolds numbers from 50 to 1000 using time-accurate numerical simulations. A detailed model based on an Arbitrary Lagrangian-Eulerian (ALE) formulation is used to account for the movement of the actuator membrane. All the resulting flows are inherently three-dimensional and dominated by two major vortices, which find their counterparts inside the actuator cavity. A new structure, which is not found in open cavities, appears as an interaction of the synthetic jet flow with the bottom wall and results in a change on the jet's heat transfer mechanisms. Analysis of the outlet temperature has shown that assuming a uniform profile is reasonable if the Reynolds number is high enough, however, the outlet jet temperature is significantly higher than the cold plate temperature. Finally, this study proposes correlations for the heat transfer at the hot wall and the outlet temperature with the Reynolds number, which can be used to account for the cavity effects without the computationally expensive ALE model.
机译:通过腔内的膜的振荡运动产生合成射流,使流体进入并通过小孔离开。本研究专注于研究具有施加温差在两个平行等温板之间的合成喷射的冷却能力。使用时间准确的数值模拟,已经解决了不稳定的三维Navier-Stokes方程,从50到1000的一系列雷诺数。基于任意拉格朗日 - 欧拉(ALE)制剂的详细模型用于解释致动器膜的运动。所有得到的流动都是固有的三维,由两个主要涡流主导,在致动器腔内找到它们的对应物。在开腔中未发现的新结构表现为合成射流流动与底壁的相互作用,并导致射流的传热机制的变化。出口温度的分析表明,如果雷诺数足够高,则假设均匀的轮廓是合理的,但是,出口喷射温度明显高于冷板温度。最后,该研究提出了与雷诺数的热壁和出口温度的传热和出口温度的相关性,其可用于考虑没有计算昂贵的ALE模型的腔效应。

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